Sørensen V, Rasmussen I B, Sundvold V, Michaelsen T E, Sandlie I
Department of Molecular Cell Biology, Institute of Biology, University of Oslo, 0316 Oslo, Norway.
Int Immunol. 2000 Jan;12(1):19-27. doi: 10.1093/intimm/12.1.19.
J chain is associated with pentameric IgM and dimeric IgA via disulfide bonds involving the penultimate cysteine residue in the secretory tailpiece of the mu or the alpha heavy chain. We have investigated the structural basis for incorporation of J chain by analyzing several IgM mutants, IgA mutants and IgG/IgM hybrid molecules. IgM mutants with the mu secretory tailpiece replaced by the alpha secretory tailpiece and/or Cys414 replaced by serine incorporated J chain, although in reduced amounts correlating with reduced pentamer/polymer formation. In addition to pentamers, tetramers of IgMC414S contained J chain, while no J chain was associated with smaller polymers or hexamers of IgM. An IgA/IgM hybrid tailpiece abolished J chain incorporation to pentameric IgM. Analysis of IgG molecules that have added a secretory tailpiece and/or have IgM domain replacements showed that J chain incorporation depends on regions of the C(mu)4 domain in addition to the tailpiece. Features of the C(mu)3 domain other than Cys414 also play a role in efficient formation of pentamers and J chain incorporation, while the C(mu)2 domain is not specifically required. By analysis of two IgA mutants that formed larger polymers than IgAwt, we found J chain equally incorporated into dimers, trimers, tetramers and pentamers. Thus, the results show that J chain incorporation into IgA does not depend on the polymeric structure, while J chain incorporation into IgM is restricted to certain polymeric conformations.
J链通过涉及μ或α重链分泌尾段倒数第二个半胱氨酸残基的二硫键与五聚体IgM和二聚体IgA相关联。我们通过分析几种IgM突变体、IgA突变体和IgG/IgM杂合分子,研究了J链掺入的结构基础。用α分泌尾段取代μ分泌尾段和/或用丝氨酸取代Cys414的IgM突变体掺入了J链,尽管其数量减少,这与五聚体/聚合物形成减少相关。除了五聚体,IgMC414S的四聚体含有J链,而较小的聚合物或IgM六聚体则不与J链相关联。IgA/IgM杂合尾段消除了J链掺入五聚体IgM。对添加了分泌尾段和/或有IgM结构域替代的IgG分子的分析表明,除了尾段外,J链掺入还取决于C(μ)4结构域的区域。除Cys414外,C(μ)3结构域的特征在五聚体的有效形成和J链掺入中也起作用,而C(μ)2结构域不是特异性必需的。通过分析两种形成比野生型IgA更大聚合物的IgA突变体,我们发现J链同样掺入二聚体、三聚体、四聚体和五聚体中。因此,结果表明J链掺入IgA不依赖于聚合物结构,而J链掺入IgM则限于某些聚合物构象。